Cyclo-converter and methods of operation

a cycloconverter and cycloconverter technology, applied in the direction of power electronics conversion, power conversion systems, electrical apparatus, etc., can solve the problems of complex single-stage design, poor overall conversion efficiency, and the sum total of the total conversion loss, so as to facilitate soft switching of the switch

Active Publication Date: 2012-12-20
EATON INTELLIGENT POWER LIMITED
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0032]There is further provided a of switching a cyclo-converter including a resonant circuit at a switching frequency greater than the supply frequ

Problems solved by technology

The problem with two stage cascaded power supplies is that the total conversion losses is the sum total of the losses of each conversion stage.
The energy storage requirements related with single-phase converters has resulted in complex single stage designs with poor overall conversion efficiencies that lack any practical advantage over the conventional two-stage design approach.
However, this converter requires 12 switching components and the hard switching employed requires highly rated components to handle with the spikes and losses.
Further, such conv

Method used

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  • Cyclo-converter and methods of operation
  • Cyclo-converter and methods of operation
  • Cyclo-converter and methods of operation

Examples

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Embodiment Construction

[0066]FIG. 2 shows a half bridge cyclo-converter according to a first embodiment. The cyclo-converter includes bidirectional switches 17 to 19 and capacitors 20 to 22 forming the half bridge. Switch 17 consists of MOSFET 35 in parallel with body diode 36 in series with MOSFET 37 in parallel with body diode 38. Switch 17 has four states:

[0067]1. on (MOSFETs 35 and MOSFET 37 on);

[0068]2. off (MOSFET's 35 and 37 off)

[0069]3. forward diode (MOSFET 37 on switching in body diode 36)

[0070]4. reverse diode (MOSFET 35 on switching in body diode 38)

[0071]Switches 18 and 19 are similarly configured. By utilizing the four switching states full resonant switching can be achieved as will be described.

[0072]Three phase supply lines 23 to 25 provide a three phase AC supply to the half bridge. The output of the cyclo-converter drives an LLC resonant circuit consisting of inductor 26, capacitor 27 and primary coil 28 of transformer 29. Output coils 30 and 31 are connected via diodes 32 and 33 and cap...

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Abstract

A three phase full resonant cyclo-converter suitable for converting a three phase AC supply to a DC output. In one embodiment the cyclo-converter consists of two half bridge cyclo-converters driving a resonant circuit. The main switching sequence of the cyclo-converter may consist of a switching sequence in which the phases of a three phase supply are switched in a repeating sequence from the largest to the smallest absolute voltage value of the supply phases.

Description

RELATED APPLICATIONS[0001]This application is a continuation-in-part application and claims priority to U.S. patent application Ser. No. 12 / 375,605, filed Jan. 29, 2009, which is a U.S. National Phase application of PCT / NZ2007 / 000165, having an international filing date of Jun. 25, 2007, claiming priority to New Zealand Patent Application No. 549103, filed Aug. 10, 2006. The disclosures of each application are incorporated herein by reference in their entireties.FIELD OF THE INVENTION[0002]This invention relates to a cyclo-converter and to methods of operating a cyclo-converter. More particularly, although not exclusively, the invention relates to a three phase full resonant cyclo-converter suitable for converting a three phase AC supply to a DC output. Whilst the converter of the present invention may find particular application in telecommunications power supplies it will be appreciated that it may find application in a wide range of applications.BACKGROUND OF THE INVENTION[0003]I...

Claims

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Application Information

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IPC IPC(8): H02M7/06
CPCY02B70/126H02M1/4216H02M1/4258Y02B70/10
Inventor HARRISON, MICHAEL JOHNOLIVO, TONY JOSEPH
Owner EATON INTELLIGENT POWER LIMITED
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